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An investigation of microsporidian polar tube.

机译:微孢子虫极管的研究。

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摘要

The Microsporidia are ubiquitous organisms that are emerging pathogens in humans. The defining characteristic of these organisms is an extrusion apparatus consisting of a polar tube that is attached to the anterior end of the spore by an anchoring disc. During germination the polar tube rapidly everts forming a hollow tube that brings the sporoplasm into intimate contact with the host cell. The polar tube provides a bridge to deliver the sporoplasm to the host cell. We have previously developed and reported an HPLC technique for the purification of major polar tube protein (PTP1). The lectin ConA binds to PTP1, bud doesn't bind to other polar tube proteins. In fungi, ConA has been demonstrated to bind to O-mannosylated proteins. Analysis suggests this binding is due to O-linked glycosylation. Examination of the Enc. cuniculi genome demonstrates a limited number of glycosylation enzymes, but there the presence of a complete O-mannosylation pathway. We evaluated the ability of Enc. hellem to infect RK13 cells in media containing mannose, glucose and sucrose as well as the ability of this microsporidia to infect various CHO cell lines that have glycosylation defects resulting in changes in ConA binding to these cells. Our hypothesis is that mannosylation of PTP1, which is conserved among the microsporidia, may provide a "sticky" surface to the polar tube that facilitates invasion. In addition, our data suggests that PTP1 can provide immunoprotection against microsporidia infection. Both anti PTP1 antibody in cell culture media and immunization with PTP1-GST fusion protein in mice inhibit microsporidia infection.;To further study the composition, formation and function of the polar tube, HPLC, Mass Spectrometry, 2-Dimentional Electrophoresis, Monoclonal Antibody, Mass Mapping and Electron Microscopy were used to look for other polar tube proteins or polar tube related proteins. Among the proteins identified, we characterized a 30-kDa protein. This protein appears to be a spore wall protein and may play a role in spore development.
机译:微孢子虫是无处不在的生物,是人类中正在出现的病原体。这些生物的主要特征是一种挤压设备,该设备由一个极管组成,该极管通过锚定盘连接到孢子的前端。在发芽过程中,极管迅速外翻,形成一个空心管,使孢子质与宿主细胞紧密接触。极管提供了将孢子传递至宿主细胞的桥梁。我们之前已经开发并报道了用于纯化主要极性管蛋白(PTP1)的HPLC技术。凝集素ConA与PTP1结合,芽不与其他极管蛋白结合。在真菌中,已证明ConA与O-甘露糖基化蛋白结合。分析表明这种结合是由于O-连接的糖基化。考试。 cuniculi基因组显示出有限数量的糖基化酶,但是存在完整的O-甘露糖基化途径。我们评估了Enc的能力。在含有甘露糖,葡萄糖和蔗糖的培养基中感染RK13细胞的过程以及这种微孢子虫感染具有糖基化缺陷的各种CHO细胞系的能力,导致与这些细胞的ConA结合发生变化。我们的假设是,在小孢子虫中保守的PTP1的甘露糖基化作用可能会在极管上形成“粘性”表面,从而促进浸润。此外,我们的数据表明PTP1可以提供针对微孢子虫感染的免疫保护。细胞培养基中的抗PTP1抗体和小鼠中的PTP1-GST融合蛋白免疫均可抑制微孢子虫感染。;​​为进一步研究极管的组成,形成和功能,HPLC,质谱,二维电泳,单克隆抗体,质谱分析和电子显微镜用于寻找其他极管蛋白或极管相关蛋白。在鉴定出的蛋白质中,我们鉴定了30 kDa的蛋白质。该蛋白似乎是孢子壁蛋白,可能在孢子发育中起作用。

著录项

  • 作者

    Xu, Yanji.;

  • 作者单位

    Yeshiva University.;

  • 授予单位 Yeshiva University.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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